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Stress Cracking and Photodegradation Behavior of Polycarbonate.The Combination of Two Major Causes of Polymer Failure

机译:聚碳酸酯的应力开裂和光降解行为。聚合物失效的两个主要原因

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This work investigates the effects of photodegradation on the environmental stress cracking resistance of polycarbonate(PC).Injection molded samples were exposed to the ultraviolet(UV)light for various times in the laboratory prior to solvent contact.The bars were then stressed with two different loads in a tensile testing machine under the presence of ethanol.During this period,the stress relaxation was monitored and,after unloading,the ultimate properties were evaluated.Complementary tests were done by size exclusion chromatography,UV-visible spectroscopy,scanning electron microscopy,and light microscopy.The results indicated that ethanol causes significant modification in PC,with extensive surface crazing as well as reduction in mechanical properties.The previous degraded samples showed a higher level of stress relaxation and a greater loss in tensile strength in comparison with the undegraded ones.The synergist action of photodegradation and stress cracking in PC may be a consequence of the chemical changes caused by oxidation.
机译:这项工作研究了光降解对聚碳酸酯(PC)的耐环境应力开裂性的影响。在与溶剂接触之前,将注塑成型的样品在实验室中暴露于紫外线(UV)多次,然后用两种不同的压力对其进行应力处理在乙醇存在下将拉伸试验机加载。在此期间,监测应力松弛,卸载后评估最终性能。通过尺寸排阻色谱法,紫外可见光谱法,扫描电子显微镜进行补充试验,结果表明,乙醇会导致PC发生显着改性,表面出现大量开裂并降低机械性能。与未降解的样品相比,先前降解的样品显示出更高的应力松弛水平和更大的拉伸强度损失PC中光降解和应力开裂的协同作用可能是后果铈的化学变化是由氧化引起的。

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